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Quorum Sensing Signal Synthesis May Represent a Selective Advantage Independent of Its Role in Regulation of Bioluminescence in Vibrio fischeri

机译:群体感应信号合成可能代表选择性优势独立于其在费氏弧菌中生物发光调控中的作用。

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摘要

The evolution of biological signalling systems and apparently altruistic or cooperative traits in diverse organisms has required selection against the subversive tendencies of self-interested biological entities. The bacterial signalling and response system known as quorum sensing or Acylated Homoserine Lactone (AHL) mediated gene expression is thought to have evolved through kin selection. In this in vitro study on the model quorum sensing bioluminescent marine symbiont Vibrio fischeri, competition and long-term sub culturing experiments suggest that selection for AHL synthesis (encoded by the AHL synthase gene luxI) is independent of the quorum sensing regulated phenotype (bioluminescence encoded by luxCDABE). Whilst results support the hypothesis that signal response (AHL binding and transcriptional activation encoded by the luxR gene) is maintained through indirect fitness benefits (kin selection), signal synthesis is maintained in the V. fischeri genome over evolutionary time through direct fitness benefits at the individual level from an unknown function.
机译:生物信号系统的进化以及不同生物体中明显的利他或合作特征的发展,需要针对自私的生物实体的颠覆趋势进行选择。细菌信号传导和应答系统称为群体感应或酰化高丝氨酸内酯(AHL)介导的基因表达,被认为是通过亲属选择进化而来的。在该模型群体感应生物发光海洋共生弧菌弧菌的体外研究中,竞争和长期亚培养实验表明,AHL合成的选择(由AHL合酶基因luxI编码)独立于群体感应调控的表型(生物发光编码) luxCDABE)。虽然结果支持以下假说:信号响应(由luxR基因编码的AHL结合和转录激活)通过间接适应性益处(亲缘选择)得以维持,但通过进化过程中的直接适应性益处,费氏弧菌基因组将在进化时间内维持信号合成。来自未知功能的个人级别。

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